Raman and Brillouin scattering are normally quite distinct processes that take place when light is resonantly scattered by, respectively, optical and acoustic phonons. We show how few-GHz acoustic phonons acquire many of the same characteristics as optical phonons when they are tightly trapped, transversely and close to modal cut-off, inside the wavelength-scale core of an air-glass photonic crystal fiber (PCF). The result is an optical scattering effect that closely resembles Raman scattering, though at much lower frequencies. We use photoacoustic techniques to probe the effect experimentally and finite element modelling to explain the results. We also show by numerical modelling that the cladding structure supports two phononic band gaps ...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
International audienceLike photonic crystals have revolutionized the way of manipulating optical wav...
In silica glass fibers, thermally excited acoustic phonons scatter light into the beam propagating i...
Raman and Brillouin scattering are normally quite distinct processes that take place when light is r...
International audienceRaman and Brillouin scattering are normally quite distinct processes that take...
Strong in-plane confinement of acoustic phonons in air-glass PCFs with sub-wavelength-scale cores is...
Raman-like forward scattering by acoustic phonons transversely trapped in birefringent silica-air ph...
Raman-like forward scattering by acoustic phonons transversely trapped in birefringent silica-air ph...
Raman-like forward scattering by acoustic phonons transversely trapped in birefringent silica-air ph...
Interactions between light and hypersonic waves can be enhanced by tight field confinement, as shown...
Interactions between light and hypersonic waves can be enhanced by tight field confinement, as shown...
Interactions between light and hypersonic waves can be enhanced by tight field confinement, as shown...
International audienceWe study guided acoustic wave Brillouin scattering (GAWBS) in several photonic...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
International audienceLike photonic crystals have revolutionized the way of manipulating optical wav...
In silica glass fibers, thermally excited acoustic phonons scatter light into the beam propagating i...
Raman and Brillouin scattering are normally quite distinct processes that take place when light is r...
International audienceRaman and Brillouin scattering are normally quite distinct processes that take...
Strong in-plane confinement of acoustic phonons in air-glass PCFs with sub-wavelength-scale cores is...
Raman-like forward scattering by acoustic phonons transversely trapped in birefringent silica-air ph...
Raman-like forward scattering by acoustic phonons transversely trapped in birefringent silica-air ph...
Raman-like forward scattering by acoustic phonons transversely trapped in birefringent silica-air ph...
Interactions between light and hypersonic waves can be enhanced by tight field confinement, as shown...
Interactions between light and hypersonic waves can be enhanced by tight field confinement, as shown...
Interactions between light and hypersonic waves can be enhanced by tight field confinement, as shown...
International audienceWe study guided acoustic wave Brillouin scattering (GAWBS) in several photonic...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
International audienceLike photonic crystals have revolutionized the way of manipulating optical wav...
In silica glass fibers, thermally excited acoustic phonons scatter light into the beam propagating i...